Takabe T, Iwasaki Y, Hibino T, Ando T
Department of Chemistry, Faculty of Science and Technology, Meijo University, Aichi.
J Biochem. 1991 Oct;110(4):622-7. doi: 10.1093/oxfordjournals.jbchem.a123630.
The PSI core complex prepared from cucumber cotyledons, which contains 80 chlorophylls per reaction center (P700) and eight polypeptides with apparent molecular masses of 65/63, 20, 19.5, 18.5, 17.5, 7.6, and 5.8 kDa, has been shown to catalyze the light-dependent transfer of electrons from plastocyanin to ferredoxin. The "native" PSI complex, which contains more than fifteen polypeptides and 120 chlorophylls per P700, did not show higher activity. Any attempt to deplete subunit(s) of the core complex decreased its activity. These results suggest that in addition to light-harvesting chlorophyll a/b protein complexes, several genes of psaA-psaK, which have been proposed as components of PSI complex, are not involved in the activity of PSI complex. It was also found that the amount of 18.5-kDa polypeptide in the PSI complex affects the activity: when this polypeptide was largely depleted, the complex was almost inactive. The inactivation was due to inhibition of electron transfer from plastocyanin to photooxidized P700. Chemical cross-linking and N-terminal amino acid sequencing experiments indicated that the 18.5-kDa polypeptide is the plastocyanin-docking protein and the psaF gene product. The function of the psaF gene product was discussed.
从黄瓜子叶中制备的PSI核心复合物,每个反应中心(P700)含有80个叶绿素以及8种表观分子量分别为65/63、20、19.5、18.5、17.5、7.6和5.8 kDa的多肽,已被证明能催化从质体蓝素到铁氧化还原蛋白的光依赖电子转移。“天然”的PSI复合物,每个P700含有超过15种多肽和120个叶绿素,并未表现出更高的活性。任何去除核心复合物亚基的尝试都会降低其活性。这些结果表明,除了捕光叶绿素a/b蛋白复合物外,一些被认为是PSI复合物组成成分的psaA - psaK基因并不参与PSI复合物的活性。还发现PSI复合物中18.5 kDa多肽的量会影响活性:当该多肽大量缺失时,复合物几乎没有活性。失活是由于质体蓝素到光氧化P700的电子转移受到抑制。化学交联和N端氨基酸测序实验表明,18.5 kDa多肽是质体蓝素对接蛋白和psaF基因产物。讨论了psaF基因产物的功能。